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Elimination of Voltage Noise of Poly (Ethylene Oxide)-Based Solid Electrolytes in High-Voltage Lithium Batteries: Linear versus Network Polymers

机译:消除高压锂电池中的聚(环氧乙烷)的电压噪声在高压锂电池中基于固体电解质:线性与网络聚合物

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摘要

Frequently, poly(ethylene oxide) (PEO)-based solid polymer electrolytes (SPEs) reveal a failure with high-voltage electrodes, e.g. LiNi0.6Mn0.2Co0.2O2 in lithium metal batteries, which can be monitored as an arbitrary appearance of a “voltage noise” during charge and can be attributed to Li dendrite-induced cell micro short circuits. This failure behavior disappears when incorporating linear PEO-based SPE in a semi-interpenetrating network (s-IPN) and even enables an adequate charge/discharge cycling performance at 40°C. An impact of any electrolyte oxidation reactions on the performance difference can be excluded, as both SPEs reveal similar (high) bulk oxidation onset potentials of ≈4.6 V versus Li|Li+. Instead, improved mechanical properties of the SPE, as revealed by compression tests, are assumed to be determining, as they mechanically better withstand Li dendrite penetration and better maintain the distance of the two electrodes, both rendering cell shorts less likely.
机译:通常,聚(环氧乙烷)(PEO)基于固体聚合物电解质(SPES)揭示了高压电极的故障,例如,例如高压电极。 LINI0.6MN0.2CO0.2O2在锂金属电池中,可以在充电期间被监视为“电压噪声”的任意外观,并且可以归因于LI DENDRITE诱导的细胞微短路。当在半互穿网络(S-IPN)中包含线性PEO的SPE时,这种故障行为消失,甚至可以在40°C下实现充分的充电/放电循环性能。可以排除任何电解质氧化反应对性能差异的影响,因为两个SPES揭示了≈4.6V的相似(高)氧化发作电位与Li +。相反,假设通过压缩试验揭示的SPE的机械性能改善,因为它们可以确定,当它们机械地更好地承受Li Dendrite穿透并且更好地保持两个电极的距离时,渲染单元都短缺。

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